Difference between revisions of "Papers of the month"

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=2012=
 
=2012=
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* '''February 2012'''
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** [http://www.ncbi.nlm.nih.gov/pubmed/22303282 Levine ''et al''.] from the lab of [[Michal Elowitz]] show how ''B. subtilis'' cells can defer [[sporulation]] for multiple cell cycles in response to sudden environmental stress. This deferral is controlled by a pulsed positive feedback loop in which [[phosphorelay]] kinase expression is activated by pulses of [[Spo0A]] phosphorylation.
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** '''Relevant ''Subti''Wiki pages:'''  [[Michal Elowitz]], [[Jonathan Dworkin]], [[phosphorelay], [[sporulation]], [[Spo0A]]
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<pubmed> 22303282 </pubmed>
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** '''A comment on this paper:'''
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<pubmed> 22303284 </pubmed>
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* '''January 2012'''
 
* '''January 2012'''
 
** [http://www.ncbi.nlm.nih.gov/pubmed/22209493 Segev ''et al''.] from the lab of [[Sigal Ben-Yehuda]] demonstrate that ribosomal RNAs are degraded in aging spores by [[rny|RNase Y]]. Moreover, the authors show that individual mRNAs experience degradation or accumulation in spores. The study suggests that the kinetics of spore [[germination]] depends on the conditions  that a spore had experienced before.
 
** [http://www.ncbi.nlm.nih.gov/pubmed/22209493 Segev ''et al''.] from the lab of [[Sigal Ben-Yehuda]] demonstrate that ribosomal RNAs are degraded in aging spores by [[rny|RNase Y]]. Moreover, the authors show that individual mRNAs experience degradation or accumulation in spores. The study suggests that the kinetics of spore [[germination]] depends on the conditions  that a spore had experienced before.

Revision as of 17:28, 9 February 2012

2012

Joe H Levine, Michelle E Fontes, Jonathan Dworkin, Michael B Elowitz
Pulsed feedback defers cellular differentiation.
PLoS Biol: 2012, 10(1);e1001252
[PubMed:22303282] [WorldCat.org] [DOI] (I p)

    • A comment on this paper:



2011


Locke JC, Young JW, Fontes M, Hernández Jiménez MJ, Elowitz MB  
Stochastic pulse regulation in bacterial stress response. 
Science. 2011 334:366-369. 
PubMed:21979936



Lehnik-Habrink M, Schaffer M, Mäder U, Diethmaier C, Herzberg C, Stülke J  
RNA processing in Bacillus subtilis: identification of targets of the essential RNase Y. 
Mol Microbiol. 2011 81(6): 1459-73. 
PubMed:21815947

Patrice Bruscella, Karen Shahbabian, Soumaya Laalami, Harald Putzer
RNase Y is responsible for uncoupling the expression of translation factor IF3 from that of the ribosomal proteins L35 and L20 in Bacillus subtilis.
Mol Microbiol: 2011, 81(6);1526-41
[PubMed:21843271] [WorldCat.org] [DOI] (I p)

Martin Lehnik-Habrink, Joseph Newman, Fabian M Rothe, Alexandra S Solovyova, Cecilia Rodrigues, Christina Herzberg, Fabian M Commichau, Richard J Lewis, Jörg Stülke
RNase Y in Bacillus subtilis: a Natively disordered protein that is the functional equivalent of RNase E from Escherichia coli.
J Bacteriol: 2011, 193(19);5431-41
[PubMed:21803996] [WorldCat.org] [DOI] (I p)



  • A comment on these papers:



  • May 2011
    • Miles et al. identified the enzyme for the key final step in the biosynthesis of queuosine, a hypermodified base found in the wobble positions of tRNA Asp, Asn, His, and Tyr from bacteria to man
    • Relevant SubtiWiki pages: QueG, translation

Zachary D Miles, Reid M McCarty, Gabriella Molnar, Vahe Bandarian
Discovery of epoxyqueuosine (oQ) reductase reveals parallels between halorespiration and tRNA modification.
Proc Natl Acad Sci U S A: 2011, 108(18);7368-72
[PubMed:21502530] [WorldCat.org] [DOI] (I p)